DocumentCode :
721893
Title :
Magnetoelectric coupling characteristics of multi-phase laminate heterostructures based on FeCuNbSiB nanocrystalline soft magnetic alloy
Author :
Qiu, J. ; Wen, Y. ; Li, P. ; Chen, H. ; Li, W.
Author_Institution :
Coll. of Optoelectron. Eng., Chongqing Univ., Chongqing, China
fYear :
2015
fDate :
11-15 May 2015
Firstpage :
1
Lastpage :
1
Abstract :
Over the last decade, multiferroic laminate heterostructures, consisting of the piezoelectric layer (such as PZT) and the magnetostrictive layer (such as Terfenol-D), have attracted considerable attention due to their high Curie or Neel temperature and large magnetoelectric (ME) effect at room temperature . The ME laminate materials have demonstrated potential in many applications such as transducers, actuators, magnetic field sensors, energy harvesters, and other devices. ME effect in the multiferroic laminated heterostructures is essentially attributed to the elastic coupling between the piezoelectric and magnetostrictive layers. The effective piezomagnetic coefficient and effective mechanical quality factor play a key role in the performance of the ME materials . However, owing to the small values of the mechanical quality factor and relative permeability, the ME voltage coefficient of the traditional Terfenol-D/PZT (MP) composites is difficult to increase. The nanocrystalline FeCuNbSiB soft magnetic alloy would be a good solution, according to the large interface stress-strain coupling effects . In this paper, a series of FeCuNbSiB/Terfenol-D/PZT (F/M/P) multi-phase laminate heterostructures are presented, whose ME coupling characteristics have been investigated .
Keywords :
Curie temperature; Neel temperature; boron alloys; copper alloys; dysprosium alloys; iron alloys; laminates; lead compounds; magnetoelectric effects; magnetostriction; multiferroics; nanocomposites; nanofabrication; niobium alloys; piezoelectric materials; silicon alloys; soft magnetic materials; stress-strain relations; terbium alloys; Curie temperature; FeCuNbSiB-Terfenol-D-PZT multiphase laminate heterostructures; ME laminate materials; ME voltage coefficient; Neel temperature; PZT; elastic coupling; interface stress-strain coupling effects; magnetoelectric coupling characteristics; magnetoelectric effect; magnetostrictive layer; mechanical quality factor; multiferroic laminated heterostructures; multiphase laminate heterostructures; nanocrystalline soft magnetic alloy; piezoelectric layer; piezoelectric layers; piezomagnetic coefficient; relative permeability; temperature 293 K to 298 K; Couplings; Laminates; Magnetic resonance; Magnetoelectric effects; Magnetostriction; Soft magnetic materials;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Magnetics Conference (INTERMAG), 2015 IEEE
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-7321-7
Type :
conf
DOI :
10.1109/INTMAG.2015.7157150
Filename :
7157150
Link To Document :
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